搜索到90455篇“ IRRADIATION“的相关文章
间歇性蓝光照射联合持续性蓝光照射对新生儿黄疸治疗效果及黄疸指数的影响
2025年
目的比较间歇性蓝光照射以及持续性蓝光照射对新生儿黄疸治疗效果及黄疸指数的影响。方法选取2020年1月-2023年12月宜春新建医院收治的60例新生儿黄疸患儿作为研究对象,采取随机数字表法将其分成对照组和研究组,每组30例。对照组接受持续性蓝光照射治疗,研究组采取间歇性蓝光照射治疗。比较两组临床治疗有效率、临床指标(首次排便时间、黄疸消退时间、胎便转黄时间、住院时间、排便频次、睡眠时间)、黄疸相关指标(黄疸指数、总胆红素、结合和非结合胆红素)、不良反应(发热、腹泻、脱水、皮疹)发生率。结果研究组治疗总有效率高于对照组(P<0.05)。研究组首次排便时间、黄疸消退时间、胎便转黄时间、住院时间、排便频次、睡眠时间均低于对照组(P<0.05)。研究组治疗后黄疸指数、总胆红素、结合胆红素、非结合胆红素水平均低于对照组(P<0.05)。研究组不良反应发生率低于对照组,家属总满意率高于对照组(P<0.05)。结论与持续性蓝光照射治疗比较,间歇性蓝光照射治疗新生儿黄疸的效果更确切,能够加快患儿康复速度,改善患儿黄疸指数,提高患儿家属满意度,且安全性较高,值得临床应用。
邹艳
关键词:新生儿黄疸黄疸指数
面向等离子体钨基材料辐照特性研究进展
2025年
钨在受到氦离子辐照时,近表面形成的氦泡随着辐照进行逐渐长大、破裂。在不同辐照条件下,钨表面随着氦泡活动而产生不同程度的损伤。氦离子辐照除使钨内部形成氦泡,还会形成位错环、空洞等缺陷。与氦离子辐照相似,中子辐照也会使钨中产生缺陷并与位错相互作用,影响钨的塑韧性。钨作为未来面向等离子体偏滤器首选材料,需克服高能粒子带来的辐照损伤及由其产生的性能变化。针对辐照对钨基材料微观结构演化及变形行为的影响机制,本文对钨基材料受到氦离子辐照所产生的表面损伤及组织演化进行阐述,并对近年钨抗辐照性能,如抗辐照损伤、抗辐照硬化等方面的改善方式进行总结,其中钨抗辐照性能的提升方式以合金化和第二相掺杂为主,并对其他改性方式进行简要的总结叙述,为未来钨基材料在辐照方面的研究提供参照。
黄俊左彤吴玉程
关键词:辐照损伤塑韧性
增材制造316不锈钢的Fe离子辐照硬化
2025年
采用选区激光熔化成形增材制造技术制备了316不锈钢,通过金相显微镜、扫描电镜、X射线衍射仪、维氏硬度计等设备表征了传统制造和增材制造316不锈钢的组织性能,并使用3.5 MeV的Fe离子常温辐照两种316不锈钢,研究两种不锈钢的辐照硬化效应。结果表明,增材制造316不锈钢拥有典型的柱状晶特征,整体为单一的奥氏体γ相,内部存在高密度的胞壁状亚晶结构,硬度在扫描面和沉积面表现出各向异性,Fe离子辐照后产生了辐照硬化效应,且增材制造316不锈钢的辐照硬化率低于传统制造316不锈钢,但也存在辐照硬化的各向异性。
施建辉全琪炜刘政平刘向兵武焕春徐超亮蒙新明祁爽
关键词:增材制造离子辐照
电子束辐照灭菌对诃子品质的影响研究
2025年
目的:以藏药诃子为研究对象,探究不同电子束辐照剂量对诃子主要活性成分和品质的影响。方法:开发以0.2%磷酸-甲醇(95∶5)为流动相,检测波长271 nm,柱温30℃,流速为1.0 mL/min的高效液相色谱法,用于检测诃子中没食子酸含量,并考察电子束辐照剂量对诃子活性成分、微生物含量及理化性质的影响。结果:没食子酸质量浓度在24.024~120.121μg/mL时,与峰面积线性关系良好(r=0.9999,n=5),精密度、重复性、稳定性和加标回收率试验结果的RSD均<2.0%(n=6);采用电子束辐照(0、3、5 kGy)处理诃子,辐照剂量为3 kGy及以上能显著降低微生物数量,并符合2020版《中华人民共和国药典》四部中非无菌产品微生物限度检查的规定,没食子酸和浸出物含量无显著差异(P>0.05),并且微生物数量、活性成分含量和浸出物含量在两个贮藏点间(0个月和10个月)无显著性差异。贮藏0个月,3、5 kGy处理组水分含量升高,贮藏10个月,辐照处理组水分降低,与CK无显著性差异。电子束辐照剂量≥3 kGy能达到良好的灭菌效果,保障诃子的药材品质。结论:电子束辐照可有效降低诃子药材中微生物的含量,同时能保持活性成分的稳定,电子束辐照可为诃子贮藏稳定性提供一定的理论参考。
白央孟爱莲张雁君尕藏卓玛德白啦孙群高鹏尼珍
关键词:诃子指纹图谱电子束辐照没食子酸
Positron annihilation study of defect formation and evolution in matrix graphite under He ion irradiation
2025年
The stability of matrix graphite under neutron irradiation and in corrosive environments is crucial for the safe operation of molten salt reactors(MSRs).Raman spectroscopy and a slow positron beam were employed to investigate the effects of He ion irradiation fluences and subsequent annealing on the microstructure and defects of the matrix graphite.He ions with 500 keV energy and fluences ranging from 1.1×10^(15)ions∕cm^(2)to 3.5×10^(17)ions∕cm^(2)were used to simulate neutron irradiation at 300 K.The samples with an irradiation fluence of 3.5×10^(16)ions∕cm^(2)were subjected to isochronal annealing at different temperatures(573 K,873 K and 1173 K)for 3 h.The Raman results revealed that the D peak gradually increased,whereas the intrinsic G peak decreased with increasing irradiation fluence.At the same irradiation fluence,the D peak gradually decreased,whereas the intrinsic G peak increased with increasing annealing temperature.Slow positron beam analysis demonstrated that the density or size of irradiation defects(vacancy type)increased with higher irradiation fluence,but decreased rapidly with increasing annealing temperature.The Raman spectral analysis of sample cross sections subjected to high irradiation fluences revealed the emergence of amorphization precisely at the depth where ion damage was most pronounced,whereas the surface retained its crystalline structure.Raman and positron annihilation analyses indicated that the matrix graphite exhibited good irradiation resistance to He ions at 300 K.However,vacancy-type defects induced by He ion irradiation exhibit poor thermal stability and can be easily removed during annealing.
Hong-Xia XuJian-Dang LiuBang-Jiao YeZi-Wen PanJun LinJin-Liang SongJian-Qing CaoChao YanYing-Ping HaoJin-Xing ChengQing-Bo Wang
关键词:GRAPHITEIRRADIATION
Microwave irradiation-induced deterioration of rock mechanical properties and implications for mechanized hard rock excavation
2025年
In this study,a novel microwave-water cooling-assisted mechanical rock breakage method was proposed to address the issues of severe tool wear at elevated temperatures,poor rock microwave absorption,and excessive microwave energy consumption.The investigation object was sandstone,which was irradiated at 4 kW microwave power for 60 s,180 s,300 s,and 420 s,followed by air and water cooling.Subsequently,uniaxial compression,Brazilian tension,and fracture tests were conducted.The evolution of damage in sandstone was measured using active and passive nondestructive acoustic detection methods.The roughness of the fracture surfaces of the specimens was quantified using the box-counting method.The damage mechanisms of microwave heating and water cooling on sandstone were discussed from both macroscopic and microscopic perspectives.The experimental results demonstrated that as the duration of the microwave irradiation increased,the P-wave velocity,uniaxial compressive strength(UCS),elastic modulus(E),tensile strength,and fracture toughness of sandstone exhibited various degrees of weakness and were further weakened by water cooling.Furthermore,an increase in the microwave irradiation duration enhanced the damaging effect of water cooling.The P-wave velocity of the sandstone was proportional to the mechanical parameters.Microwave heating and water cooling weakened the brittleness of the sandstone to a certain extent.The fractal dimension of the fracture surface was correlated with the duration of microwave heating,and the water-cooling treatment resulted in a rougher fracture surface.An analysis of the instantaneous cutting rate revealed that water cooling can substantially enhance the efficiency of microwave-assisted rock breakage.
Zheng YangMing TaoMuhammad Burhan MemonDengdeng ZhuangYan Zhao
不同剂量电子束辐照杀菌处理对黑果腺肋花楸果汁品质的影响
2025年
本研究以富含花色苷的黑果腺肋花楸果汁为研究对象,探究不同剂量辐照处理对果汁理化特性和功能活性物质的影响,并结合花青素靶向代谢组学探究辐照处理对果汁中花青素类代谢物组成及含量的影响,同时对果汁的感官品质进行评价。3~9 kGy辐照处理后黑果腺肋花楸果汁褐变加剧,总花色苷含量和总酚含量分别显著降低了18.10%~33.72%和2.47%~12.03%(P<0.05)。果汁中主要存在的单体花青素为矢车菊素-3-O-半乳糖苷、矢车菊素-3-O-阿拉伯糖苷、矢车菊素-3-O-木糖苷和矢车菊素-3-O-葡萄糖苷,其中矢车菊素-3-O-葡萄糖苷在辐照下的稳定性更高,3 kGy剂量辐照后其含量无显著变化(P>0.05),而其余三者含量均显著降低(P<0.05)。在感官品质上,辐照处理提高了果汁的红度和黄度,降低了果汁中挥发性硫化物与挥发性萜烯类化合物含量。本研究可为富含花青素类物质食品的辐照加工工艺选择及参数确定提供一定的技术参考。
吕欣然王淑娟张丹朱婷婷孙翔宇马婷婷
关键词:非热杀菌辐照花色苷
高能电子束辐照结合乙烯抑制剂对软枣猕猴桃保鲜效果的研究
2025年
为解决软枣猕猴桃采后衰老软化、保鲜期短的问题,通过调控电子束辐照剂量,辅以乙烯抑制剂1-甲基环丙烯(1-Methylcyclopropene,MCP)和低温冷藏,考察软枣猕猴桃质构、维生素C含量、可溶性固形物含量、细胞膜透性等指标的变化。结果表明:0.4 k Gy电子束辐照结合MCP的复合保鲜方式有效地控制了软枣猕猴桃采后的衰老过程,4℃贮藏30 d时,软化率仅为对照组的25%,果肉硬度是对照组的5倍,货架期可达30 d。
张慈岳玲颜伟强郑琦田文慧陈志军段卓旭孔秋莲
关键词:辐照处理1-甲基环丙烯贮藏
Effect of tensile loading on irradiation creep behavior of graphite crystal:a molecular dynamics study
2025年
The operational lifespan of nuclear graphite is significantly affected by irradiation creep,yet the microstructural mechanism underlying this creep phenomenon remains unclear.Some theories attempt to link microstructural evolution with creep behavior,but the rapid migration rate of defects under irradiation and loading makes it difficult to capture the specific evolution process experimentally,resulting in a lack of direct structural evidence.Therefore,in this study,molecular dynamics simulations are employed to investigate the irradiation behavior and microstructural migration under external loading.The aim is to provide microstructural evidence for theories such as the dislocation pinning-unpinning and crystal yielding.The results demonstrate that high tensile loads can increase the potential energy and reduce threshold displacement energy of graphite crystals.Consequently,displacement damage probability and creep rate increase,which is not considered in previous theories.Meanwhile,different creep mechanisms are observed at different damage states and applied loads.In low-dose damage states dominated by interstitials and vacancies,the pinning-unpinning process at basal plane may be caused by a defect diffusion mode.Under high stress levels,direct breaking of pinning structures occurs,leading to rapid migration of basal planes,demonstrating the microstructural evolution process of irradiated crystal yielding and plastic flow.In high-dose damage states characterized significantly by amorphous components,short-range atomic diffusion can become the dominant creep mechanism,and diffusion along the c-axis of graphite crystals is no longer constrained.These findings provide a crucial reference for understanding the irradiation and creep behavior of nuclear graphite in reactors.
Dong-Bo XiongD.K.L.Tsang
Preliminary Study on Irradiation Device of Fission Molybdenum-Technetium Production Based on China Advanced Research Reactor
2025年
As a multipurpose research reactor,fission molybdenum-technetium irradiation production is one of the wide applications of China Advanced Research Reactor CARR.The goal of this study is to achieve“online loading and unloading”of the target during fission molybdenum-99(99Mo)to technetium-99m(99mTc)irradiation production without affecting the normal reactor operation and other irradiation channels,which will make CARR more efficient in performing irradiation tasks.This paper introduces the design principles,requirements and concept structural design of the irradiation device of fission 99Mo-99mTc.
Shi ShiZhou Yidong

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宋莉晖
作品数:66被引量:346H指数:10
供职机构:清华大学理学院化学系
研究主题:液相色谱-质谱 土壤污染 电子束辐照 油污土壤 克伦特罗
杨成对
作品数:104被引量:475H指数:12
供职机构:清华大学
研究主题:液相色谱-质谱 电子束辐照 克伦特罗 质谱分析 MS
王忠敏
作品数:176被引量:939H指数:16
供职机构:上海交通大学医学院附属瑞金医院
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刘密新
作品数:68被引量:415H指数:11
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王艳
作品数:75被引量:273H指数:9
供职机构:四川省原子能研究院
研究主题:辐照 食品辐照 水稻 降解 川芎